Repulsive Fermi and Bose Polarons in Quantum Gases

Francesco Scazza, Matteo Zaccanti, Pietro Massignan, Meera M. Parish, Jesper Levinsen

Research output: Contribution to journalReview ArticleResearchpeer-review

38 Citations (Scopus)

Abstract

Polaron quasiparticles are formed when a mobile impurity is coupled to the elementary excitations of a many-particle background. In the field of ultracold atoms, the study of the associated impurity problem has attracted a growing interest over the last fifteen years. Polaron quasiparticle properties are essential to our understanding of a variety of paradigmatic quantum many-body systems realized in ultracold atomic gases and in the solid state, from imbalanced Bose–Fermi and Fermi–Fermi mixtures to fermionic Hubbard models. In this topical review, we focus on the so-called repulsive polaron branch, which emerges as an excited many-body state in systems with underlying attractive interactions such as ultracold atomic mixtures, and is characterized by an effective repulsion between the impurity and the surrounding medium. We give a brief account of the current theoretical and experimental understanding of repulsive polaron properties, for impurities embedded in both fermionic and bosonic media, and we highlight open issues deserving future investigations.

Original languageEnglish
Article number55
Number of pages30
JournalAtoms
Volume10
Issue number2
DOIs
Publication statusPublished - Jun 2022

Keywords

  • Bose polarons
  • Fermi polarons
  • mediated interactions
  • metastable quasiparticles
  • quasi-particle lifetime
  • repulsive Fermi gas
  • repulsive interactions
  • ultracold atomic mixtures

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